SIGNIFICANCE: Organisms have evolved both enzymatic and nonenzymatic pathways to prevent oxidative damage to essential macromolecules, including proteins and nucleic acids. Pathways modulated by different protein-based sensory and regulatory modules ensure a rapid and appropriate response.RECENT ADVANCES: In contrast to classical two-component systems that possess internal sensory and regulatory modules, an accessory protein-dependent redox-signaling system has been recently characterized in bacteria. This system senses extracellular iron-mediated oxidative stress signals via an extracellularly located protein (HbpS). In vivo and in vitro studies allowed the elucidation of molecular mechanisms governing this system. Moreover, recent studies...
Studying biological signaling pathways is key to understanding the various processes within a cell. ...
Redox reactions pervade living cells. They are central to both anabolic and catabolic metabolism. Th...
AbstractA novel cellular response to oxidative stress has been discovered, in which the activity of ...
SIGNIFICANCE: Organisms have evolved both enzymatic and nonenzymatic pathways to prevent oxidative d...
SIGNIFICANCE: Organisms have evolved both enzymatic and nonenzymatic pathways to prevent oxidative d...
SIGNIFICANCE: Organisms have evolved both enzymatic and nonenzymatic pathways to prevent oxidative d...
SIGNIFICANCE: Organisms have evolved both enzymatic and nonenzymatic pathways to prevent oxidative d...
Bacteria are permanently in contact with reactive oxygen species (ROS), both over the course of thei...
The two-component system SenS-SenR and the extracellular HbpS protein of the cellulose degrader Stre...
The two-component system SenS-SenR and the extracellular HbpS protein of the cellulose degrader Stre...
Bacteria are permanently in contact with reactive oxygen species (ROS), both over the course of thei...
Bacteria are permanently in contact with reactive oxygen species (ROS), both over the course of thei...
Bacteria are permanently in contact with reactive oxygen species (ROS), both over the course of thei...
Bacteria are permanently in contact with reactive oxygen species (ROS), both over the course of thei...
In recent studies of human bacterial pathogens, oxidation sensing and regulation have been shown to ...
Studying biological signaling pathways is key to understanding the various processes within a cell. ...
Redox reactions pervade living cells. They are central to both anabolic and catabolic metabolism. Th...
AbstractA novel cellular response to oxidative stress has been discovered, in which the activity of ...
SIGNIFICANCE: Organisms have evolved both enzymatic and nonenzymatic pathways to prevent oxidative d...
SIGNIFICANCE: Organisms have evolved both enzymatic and nonenzymatic pathways to prevent oxidative d...
SIGNIFICANCE: Organisms have evolved both enzymatic and nonenzymatic pathways to prevent oxidative d...
SIGNIFICANCE: Organisms have evolved both enzymatic and nonenzymatic pathways to prevent oxidative d...
Bacteria are permanently in contact with reactive oxygen species (ROS), both over the course of thei...
The two-component system SenS-SenR and the extracellular HbpS protein of the cellulose degrader Stre...
The two-component system SenS-SenR and the extracellular HbpS protein of the cellulose degrader Stre...
Bacteria are permanently in contact with reactive oxygen species (ROS), both over the course of thei...
Bacteria are permanently in contact with reactive oxygen species (ROS), both over the course of thei...
Bacteria are permanently in contact with reactive oxygen species (ROS), both over the course of thei...
Bacteria are permanently in contact with reactive oxygen species (ROS), both over the course of thei...
In recent studies of human bacterial pathogens, oxidation sensing and regulation have been shown to ...
Studying biological signaling pathways is key to understanding the various processes within a cell. ...
Redox reactions pervade living cells. They are central to both anabolic and catabolic metabolism. Th...
AbstractA novel cellular response to oxidative stress has been discovered, in which the activity of ...